Unconventional spin-to-charge conversion in MnPd3

M Mahendra DC (Intel Foundry Technology Research , 2501 NE Century Blvd., Hillsboro, Oregon 97124,) P Punyashloka Debashis (Intel Foundry Technology Research , 2501 NE Century Blvd., Hillsboro, Oregon 97124,) C Christopher Gay (Intel Foundry Technology Research , 2501 NE Century Blvd., Hillsboro, Oregon 97124,) J Jennifer Lux (Intel Foundry Technology Research , 2501 NE Century Blvd., Hillsboro, Oregon 97124,) Y Yu Zhang (Xiangya Hospital, Central South University Changsha China) D Dominique Adams (Intel Foundry Technology Research , 2501 NE Century Blvd., Hillsboro, Oregon 97124,) F Fen Xue C Carly Rogan (Intel Foundry Technology Research , 2501 NE Century Blvd., Hillsboro, Oregon 97124,) T Tyrone Wilson (Intel Foundry Technology Research , 2501 NE Century Blvd., Hillsboro, Oregon 97124,) R Raphael Toku (Intel Foundry Technology Research , 2501 NE Century Blvd., Hillsboro, Oregon 97124,) J Joshua Kevek (Intel Foundry Technology Research , 2501 NE Century Blvd., Hillsboro, Oregon 97124,) T Tristan A Tronic (Intel Foundry Technology Research 1 , 2501 NE Century Blvd., Hillsboro, Oregon 97124,) S Scott B. Clendenning (Intel Foundry Technology Research , 2501 NE Century Blvd., Hillsboro, Oregon 97124,) A Adedapo A. Oni (Intel Foundry Technology Research , 2501 NE Century Blvd., Hillsboro, Oregon 97124,) M Marko Radosavljevic (Intel Foundry Technology Research , 2501 NE Century Blvd., Hillsboro, Oregon 97124,) S Shan X. Wang (Department of Materials Science and Engineering, Stanford University 2 , Stanford, California 94305,) I Ian A. Young (Intel Foundry Technology Research , 2501 NE Century Blvd., Hillsboro, Oregon 97124,)

Abstract

We demonstrate the unconventional and conventional spin-to-charge conversion (SCC) in MnPd3 using local SCC device at room temperature. The low crystal symmetry along the (114) growth direction allows unconventional SCC in MnPd3. The figure of merit of in-plane spin polarization in unconventional SCC is determined to be 4.70%. Unconventional and conventional SCCs are promising for magnetization detection in spintronics and magnetoelectric devices.

Article Details

Volume / Issue Vol. 126, Issue 11
Published March 01, 2025
ISSN 0003-6951
Publisher American Institute of Physics

Journal Info

Applied Physics Letters

American Institute of Physics

ISSN: 0003-6951 Physical Sciences

Authors (17)

M

Mahendra DC

Intel Foundry Technology Research , 2501 NE Century Blvd., Hillsboro, Oregon 97124,

P

Punyashloka Debashis

Intel Foundry Technology Research , 2501 NE Century Blvd., Hillsboro, Oregon 97124,

C

Christopher Gay

Intel Foundry Technology Research , 2501 NE Century Blvd., Hillsboro, Oregon 97124,

J

Jennifer Lux

Intel Foundry Technology Research , 2501 NE Century Blvd., Hillsboro, Oregon 97124,

Y

Yu Zhang

Xiangya Hospital, Central South University Changsha China

D

Dominique Adams

Intel Foundry Technology Research , 2501 NE Century Blvd., Hillsboro, Oregon 97124,

F

Fen Xue

C

Carly Rogan

Intel Foundry Technology Research , 2501 NE Century Blvd., Hillsboro, Oregon 97124,

T

Tyrone Wilson

Intel Foundry Technology Research , 2501 NE Century Blvd., Hillsboro, Oregon 97124,

R

Raphael Toku

Intel Foundry Technology Research , 2501 NE Century Blvd., Hillsboro, Oregon 97124,

J

Joshua Kevek

Intel Foundry Technology Research , 2501 NE Century Blvd., Hillsboro, Oregon 97124,

T

Tristan A Tronic

Intel Foundry Technology Research 1 , 2501 NE Century Blvd., Hillsboro, Oregon 97124,

S

Scott B. Clendenning

Intel Foundry Technology Research , 2501 NE Century Blvd., Hillsboro, Oregon 97124,

A

Adedapo A. Oni

Intel Foundry Technology Research , 2501 NE Century Blvd., Hillsboro, Oregon 97124,

M

Marko Radosavljevic

Intel Foundry Technology Research , 2501 NE Century Blvd., Hillsboro, Oregon 97124,

S

Shan X. Wang

Department of Materials Science and Engineering, Stanford University 2 , Stanford, California 94305,

I

Ian A. Young

Intel Foundry Technology Research , 2501 NE Century Blvd., Hillsboro, Oregon 97124,